A method of using a device for making ceramic tiles by shape-conserving turning over
A ceramic tile and plane technology, applied in the field of architectural ceramic tiles, can solve problems such as complex production processes, and achieve the effects of not easily deformed, reducing usage, and saving materials
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Embodiment 1
[0051] A device for making ceramic tiles by shape-conserving turning over figure 1 with figure 2 , including an upper plane circulation carrier 3, a lower plane circulation carrier 7, an upper arc panel 4, a lower arc panel 6 and a vertical cavity 5, and the vertical cavity 5 and the lower plane circulation carrier 7 are arranged at 90° , the upper arc panel 4 is connected above the vertical cavity 5, the lower arc panel 6 is connected below the vertical cavity 5, the upper arc panel 4 is connected with the upper planar circulation carrier 3, and the lower arc panel 6 is connected The lower plane circulation carrier 7 also includes several power units with adjustable numbers.
[0052] The bearing plane of the upper plane circulation carrier 3 is set horizontally; the level difference between the upper plane circulation carrier 3 and the lower plane circulation carrier 7 is 200mm-1000mm; 3 Raw material layout device 1 and pattern forming device 2 above. The conveyor belt of...
Embodiment 2
[0065] Such as Figure 4 , compared with embodiment 1, the difference of embodiment 2 is that the vertical chamber 5 does not share one side with the conveyor belt but is an independent chamber with four sides, and the vertical chamber material guide system is added to guide the material , the vertical cavity material guide system includes a vertical cavity material guide plate 51 and a vertical cavity material guide circulating belt 52 . Compared with Example 1, the difference of Example 2 also includes that, in combination with the spraying technology in the existing market, in order to achieve the effect of making fine and randomly wrapped silk textures, the upper plane circulation in the above-mentioned Example 1 can be The feeding belt of the carrier 3 is lengthened, and a spraying device 14 is added on it, because the spraying can spray the slurry down in an atomized manner, and in the same way as in Example 1, the atomized slurry package can be obtained. Each irregular...
Embodiment 3
[0067] Such as Figure 5 , compared with Example 1, the difference of Example 3 is that, in combination with capping technology, in order to achieve the fine crack line effect such as natural stone cracks, the present invention can use the upper plane circulation carrier 3 in the above-mentioned Example 1 The feeding belt is lengthened, and the top and the sixth feeding roller 19 are added on it. When the pattern material passes through the second pre-pressing roller 18 and becomes a flat raw material layout, it reaches the top cracking device position corresponding to the top cracking structure 20. , the top of the pattern material from bottom to top will produce random cracks, and the roller will sieve and drop the colored or transparent materials pre-loaded into the hopper into the cracks. As the transmission progresses, other When leaving the top crack position, the crack closes naturally and clamps the raw materials that have entered the crack, and then is treated by the ...
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